• 제목/요약/키워드: HFC 냉매

검색결과 105건 처리시간 0.028초

에어컨용 냉매 HFC-152a와 HFC-152a에 $CF_3$I를 혼합한 공비혼합냉매 특성에 관한 연구 (A Study on the Refrigerant Characteristics of the HFC-l52a, and Azeotrope Mixed with $CF_3$I in Air Conditioners)

  • 이종인;하옥남;홍경한;권일욱;박찬수
    • 설비공학논문집
    • /
    • 제14권4호
    • /
    • pp.332-340
    • /
    • 2002
  • In these days, environmental concerns have been increased throughout the industry and community worldwide. To prevent the ozone depletion, ozone depletion potential of a refrigerant must be zero. Simultaneously, a refrigerant with low GWP (global warming potential) is very demanding to induce green house effect. Chlorine-free HFC-l34a is a refrigerant widely used for automotive air-conditioning system because its destruction potential is ecologically zero. Although HFC-l34a has no ozone depletion potential, its global warming potential is so high that it is not considered as a perfect alternative refrigerant that is acceptable for long-term use. In this paper, experimental measurement has been carried out to analyze the performance characteristics of automotive air-conditioning system using HFC-152a, which has low GWP and zero ODP. Also mixed refrigerant that is composed of HFC-152a and $CF_3$ was applied to investigate an alternative possibility for the automotive airconditioning system. As a result of this study, we could draw following conclusions; With respect to the variation of the rotational speed of compressor, outside air temperature and flow rate, the heat amount of evaporator and compressor and performance coefficient was varied.

R435A를 적용한 정수기 냉동시스템의 성능평가 (Performance Evaluation of R435A on Refrigeration System of Water Purifiers)

  • 이요한;강동규;최현주;정동수
    • 한국태양에너지학회 논문집
    • /
    • 제33권1호
    • /
    • pp.15-23
    • /
    • 2013
  • In this study, thermodynamic performance of R435A is examined both numerically and experimentally in an effort to replace HFC134a used in the refrigeration system of domestic water purifiers. Even though HFC134a is used predominantly in such a system these days, it needs to be phased out in the near future in Europe and most of the developed countries due to its high global warming potential. To solve this problem, cycle simulation and experimental measurements are carried out with a new refrigerant mixture of 20%R152a/80%RE170 using actual domestic water purifiers. This mixture is numbered and listed as R435A by ASHRAE recently. Test results show that the system performance with R435A is greatly influenced by the amount of charge due to the small internal volume of the refrigeration system of the domestic water purifiers. With the optimum amount of charge of 21 to 22 grams, about 50% of HFC134a, the energy consumption of R435A is 11.8% lower than that of HFC134a. The compressor discharge temperature of R435A $8^{\circ}C$ lower than that of HFC134a at the optimum charge. Overall, R435A, a new long term environmentally safe refrigerant, is a good alternative for HFC134a requiring little change in the refrigeration system of the domestic water purifiers.

수평관에서 프로판, 이소부탄, BFC134a를 포함한 혼합냉매의 풀비등 열전달계수 (Pool Boiling Heat Transfer Coefficients of Mixtures Containing Propane, Isobutane and HFC134a on a Plain Tube)

  • 박기정;백인철;정동수
    • 설비공학논문집
    • /
    • 제18권12호
    • /
    • pp.955-963
    • /
    • 2006
  • Nucleate pool boiling heat transfer coefficients (HTCs) were measured with one nonazeotropic mixture of Propane/Isobutane and two azeotropic mixtures of HFC134a/Isobutane and Propane/HFC134a. All data were taken at the liquid pool temperature of $7^{\circ}C$ on a horizontal plain tube with heat fluxes of $10kW/m^2\;to\;80kW/m^2$ with an interval of $10kW/m^2$ in the decreasing order of heat flux. The measurements were made through electrical heating by a cartridge heater. The nonazeotropic mixture of Propane/Isobutane showed a reduction of HTCs as much as 41% from the ideal values. The azeotropic mixtures of HFC134a/Isobutane and Propane/HFC134a showed a reduction of HTCs as much as 44% from the ideal values at compositions other than azeotropic compositions. At azeotropic compositions, however, the HTCs were even higher than the ideal values due to the increase in the vapor pressure. For all mixtures, the reduction in heat transfer was greater with a larger gliding temperature difference. Stephan and $K{\ddot{o}}rner's$ and Jung et al's correlations predicted the HTCs of mixtures with a mean deviation of 11%. The largest mean deviation occurred at the azeotropic compositions of HFC134a/Isobutane and Propane/HFC134a.

CFC 대체냉매를 사용한 핀-관 열교환기의 성능해석 (The Performance Analysis of the Fin-Tube Heat Exchanger Using CFC Alternative Refrigerant)

  • 박희용;박경우;차재병
    • 대한기계학회논문집
    • /
    • 제17권9호
    • /
    • pp.2358-2372
    • /
    • 1993
  • In this study, the computer modeling for prediction of the performance of fin-tube heat exchanger using alternative refrigerant, HFC-134a was developed and the computer program for calculating the various properties of HFC-134a and the existing refrigerant CFC-12 and HCFC-22 was made. The heat exchanger modeling is based on a tube-by-tube approach, which is capable of analysis for the complex coil array. Performance of each tube is analyzed separately by considering the cross-flow heat transfer with external airstream and the appropriate heat and mass transfer relationships. A performance comparison according to the different refrigerants is provided using this developed model. As the result of this study, total heat transfer rate of evaporator and condenser using HFC-134a were found higher than that of using CFC-12 for the same operating conditions. When the mass flow rate of HFC-134a was less than CFC-12 about 18. 16%, the cooling capacities of evaporator were found to be the same.

HFC125+Propane 혼합냉매의 기-액 평형에 관한 실험적 연구 (An Experimental Study of Vapor-Liquid Equilibrium for HFC12S+Propane Refrigerant Mixtures)

  • 강준원;박영무;유재석;이종화
    • 설비공학논문집
    • /
    • 제15권7호
    • /
    • pp.563-571
    • /
    • 2003
  • The forty vapor-liquid equilibrium data of the binary system, HFC125+Propane, were measured between 273.15 and 313.15 K at 10 K interval and the composition range 0.2∼0.75, respectively. Experiments were performed in a circulation type apparatus in which the vapor phase was forced through the liquid phase. The composition at equilibrium were mea-sured by gas chromatography, and its response was calibrated using gravimetrically prepared mixtures. Vapor-liquid equilibrium data were calculated by using CSD equation of state and compared with the experimental data.

신냉매용 자동차 공조 시스템에서 블록식 팽창밸브의 설계 (A Design of the Block Type Expansion Valve in Automotive Air Conditioning System using HFC-134a)

  • 김경훈;박상훈;강우
    • 한국자동차공학회논문집
    • /
    • 제11권4호
    • /
    • pp.196-203
    • /
    • 2003
  • This study was performed to design the optimal block type expansion valve through analyzing the characteristics of the block type expansion valve in automotive air conditioning system using HFC-134a. Because an alternative refrigerant (HFC-l34a) is being used instead of CFC-12 for automotive air conditioning system, newly designed air conditioning components are necessary due to changes in characteristics. The performance tests were accomplished through the test bench, that is manufactured based on the study. And then it was carried out to measure the variation of temperature and pressure at each part of the air conditioning system according to the compressor speed.

대체냉매를 적용한 냉동공조기기의 개발 동향

  • 좌성훈
    • Tribology and Lubricants
    • /
    • 제12권2호
    • /
    • pp.1-7
    • /
    • 1996
  • 최근까지 개발되어진 대체냉매는 매우 다양한데, 실제 적용되고 있고 또한 적용이 고려되고 있는 대체냉매는 주로 기존의 냉매와 열역학적인 특성이 유사하여 기존의 냉동시스템의 구조변경 없이 사용될 수 있는 것들이 주류를 이루고 있으며, 현재 오존층 파괴 효과가 없는 HFC(Hydrofuorocarbon)계통의 냉매가 많이 개발되고 있다. 대체냉매의 적용에는 냉매의 열역학적인 성질 뿐만 아니라 ㅎ 화학적 안정성, 윤활유와의 혼합성, 연소성 등 많은 문제를 고려해야 한다. 본 해설에서는 대체냉매를 적용한 공조시스템의 개발 동향 및 문제점에 관해서 간단히 서술하였으며, 비록 제한적이기는 하나 주로 삼성전자에서 생산되고 있는 냉장고와 에어콘을 모델로 하여 설명하였다.

냉동공조용 밀폐형 압축기의 대체냉매와 냉동기유 (Alternative Refrigerant and Oil for Hermetic Refrigerant Compressors)

  • 강태욱
    • 기술사
    • /
    • 제34권2호
    • /
    • pp.23-27
    • /
    • 2001
  • Until 1996, CFC refrigerants haven't been used because it destroyed ozone that affecting In ecosystem. And HCFC will prohibit until 2020. In Europe, they attempt to move up its fulfillment. Until now the change have completed CFC into HFC134a and is considerated HCFC into HFC410A and HFC407C. But HFC41 OA has high condenser temperature and HFC407C is non-azeotropic refrigerant mixture and gliding temperature phenomenon. New refrigerant ell POE, PVE, PAG was also developed.

  • PDF

순수냉매의 풀비등 열전달 상관식 (Pool Boiling Heat Transfer Correlation for Pure Refrigerants)

  • 고영환;김종곤;송길홍;정동수;김영일
    • 설비공학논문집
    • /
    • 제12권10호
    • /
    • pp.941-949
    • /
    • 2000
  • Pool boiling heat transfer coefficients (HTCs) of HCFC123, CFC11, HCFC142b, HFC134a, CFC12, HFC22, HFC125 and HFC32 on a horizontal smooth tube have been measured. The experimental apparatus is specially designed to simulate the real heat transfer tube with the use of the secondary fluid of water as a heat source rather than a conventional electric heat source. Data were taken in the order of decreasing heat flux starting at $80 ㎾/m^2\; and \;ending\; at\; 5㎾/m^2\;in\; the\; poo\;l temperature\; at\; 7^{\circ}C$, Test results showed that HTCs of HFC125, and HFC32 are 50~67% higher than those of HCFC22. It is also found that some of the popular pool boiling heat transfer correlations in the literature are not good to predict the HTCs of newly developed alternative refrigerants. A new correlation was developed by a regression analysis which is based upon the consistent data obtained in this study and it showed an excellent agreement with all experimental data having an absolute mean deviation of less than 10%.

  • PDF

열전달 촉진관에서 HFC32/HFC152a 혼합냉매의 외부 응축열전달계수 (External Condensation Heat Transfer Coefficients of HFC32/HFC152a Mixtures on Enhanced Tubes)

  • 이요한;강동규;김현주;이호생;정동수
    • 설비공학논문집
    • /
    • 제26권7호
    • /
    • pp.315-321
    • /
    • 2014
  • In this study, external condensation heat transfer coefficients (HTCs) of two non-azeotropic refrigerant mixtures of HFC32/HFC152a at various compositions were measured on both 26 fpi low-fin and Turbo-C enhanced tubes, of 19.0 mm outside diameter. All data were taken at the vapor temperature of $39^{\circ}C$, with a wall subcooling of 3~8 K. Test results showed that the HTCs of the tested mixtures on the enhanced tubes were much lower than the ideal values calculated by mass fraction weighting of the pure component HTCs. Also, the reduction of HTCs due to the diffusion vapor film was much larger than that of a plain tube. Unlike HTCs of pure fluids, HTCs of the mixtures measured on enhanced tubes increased, as the wall subcooling increased, which was due to the sudden break-up of the vapor diffusion film with an increase in wall subcooling. Finally, the heat transfer enhancement ratios for mixtures were found to be much lower, than those of pure fluids.